材料科学
调解人
氧化还原
水溶液
氧化物
离子
无机化学
铋
纳米技术
化学工程
化学
有机化学
医学
内科学
工程类
冶金
作者
Nannan Liu,Zeping Liu,Jiyang Li,Zhen Ge,Lishuang Fan,Chenyang Zhao,Zhikun Guo,Aosai Chen,Xingyuan Lu,Yu Zhang,Naiqing Zhang,Xigui Zhang
标识
DOI:10.1021/acsami.3c11677
摘要
Many cathode materials store zinc ions based on the intercalation reaction mechanism in neutral aqueous Zn-ion batteries, and the structural design of the cathodes has been stuck in the curing mode by extending the ion diffusion channel. Here, we first develop halide ions to unlock the electrochemical activity of conversion-type Bi2O3 in aqueous Zn-ion batteries. Notably, the iodide ion shows the best performance compatibility with the Bi2O3 cathode. The electrochemical reaction mechanism studies show that iodide ions can be regarded as a redox medium to reduce the charge-transfer activation energy and motivate the conversion of Bi2O3 from Bi3+ to Bi0 during the cycle. Unsurprising, the discharge-specific capacity can reach 436.8 mAh g–1 at 0.5 A g–1 and achieve a cyclic lifespan of 6000 cycles at a current density of 3 A g–1. The activation of the Bi2O3 conversion reaction by iodide ions is of great significance for broadening the research range of ZIB cathode materials.
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